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从环境可持续性角度对用于生物燃料生产的蓖麻脱油饼进行不同粒径研究。

Different particle size study of castor deoiled cake for biofuel production with an environmental sustainability perspective.

作者信息

Deshmukh Minal, Pande Ashwini, Marathe Anant

机构信息

School of Petroleum Engineering, MIT World Peace University, Paud Road, Kothrud, Pune, 411038, India.

Shree Hanuman Vyayam Prasarak Mandal, Near Shri Ekvira Devi Temple Shree H. V. P. Mandal, Amravati, 444605, India.

出版信息

Heliyon. 2022 Jun 11;8(6):e09710. doi: 10.1016/j.heliyon.2022.e09710. eCollection 2022 Jun.

DOI:10.1016/j.heliyon.2022.e09710
PMID:35756129
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9213708/
Abstract

Agro-industrial waste material such as non-edible deoiled Castor bean cake (CBC) is one of the most abundant sources for bioethanol demonstrating the feasibility of utilizing bioethanol as commercial biofuel. This is an alternative to mitigate fossil fuel dependence and carbon dioxide accumulation in the atmosphere. The CBC was pretreated with the help of thionyl chloride at a temperature of 35 °C for residence time 25 min. Subsequently, CBC substrate obtained from pretreatment was subjected to enzymatic hydrolysis with T. viride concentration varying from 0.5 to 5 g L at 35 °C, pH 6 for 48 h. Under optimized conditions the process integrating pretreatment followed by enzymatic hydrolysis for 48 h at 35 °C with pH 7 resulted in 76 g L of reducing sugars from 100 g CBC. The obtained sugar was further fermented at 30 °C for 72 h with as a fermenting media which yields 37.5 g L of bioethanol. A study of different particle sizes of CBC with BSS-5, BSS-10, BSS-20 was done for efficient enzymatic hydrolysis and fermentation into bioethanol. On a pilot-scale 375 g L of bioethanol was obtained from 1 kg of CBC with the same reaction conditions. The present study demonstrates optimized solid: liquid ratio 1:2 for hydrolysis, fermentation process, and the production cost for bioethanol per L. Figure S1 represents graphical abstract for the production of bioethanol from CBC in supplementary information.

摘要

农业工业废料,如不可食用的脱油蓖麻籽饼(CBC),是生物乙醇最丰富的来源之一,证明了将生物乙醇用作商业生物燃料的可行性。这是减轻对化石燃料的依赖和大气中二氧化碳积累的一种替代方法。CBC在35℃温度下用亚硫酰氯预处理25分钟。随后,将预处理得到的CBC底物在35℃、pH 6的条件下,用浓度为0.5至5 g/L的绿色木霉进行48小时的酶水解。在优化条件下,先进行预处理,然后在35℃、pH 7的条件下进行48小时的酶水解,该过程从100 g CBC中得到76 g/L的还原糖。将所得的糖在30℃下用 作为发酵培养基进一步发酵72小时,得到37.5 g/L的生物乙醇。对具有BSS - 5、BSS - 10、BSS - 20的不同粒径的CBC进行了研究,以实现高效的酶水解并发酵成生物乙醇。在中试规模下,在相同反应条件下,从1 kg CBC中获得了375 g/L的生物乙醇。本研究展示了水解、发酵过程中优化的固液比为1:2以及每升生物乙醇的生产成本。图S1代表了补充信息中从CBC生产生物乙醇的图形摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/4987dcc4c614/gr3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/fd048ced553d/gr1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/f4c6f38acfcb/gr2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/4987dcc4c614/gr3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/fd048ced553d/gr1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/f4c6f38acfcb/gr2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb81/9213708/4987dcc4c614/gr3.jpg

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